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首页> 外文期刊>Journal of material cycles and waste management >Comparative analysis of physicochemical, nutrient, and spectral properties of agricultural residue biochars as influenced by pyrolysis temperatures
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Comparative analysis of physicochemical, nutrient, and spectral properties of agricultural residue biochars as influenced by pyrolysis temperatures

机译:热解温度对农残生物炭的理化,营养和光谱特性的比较分析

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摘要

The objectives of this study were to assess the physicochemical, nutrient, and spectral properties of biochar prepared from four major agricultural residues of India [rice straw (RSB), wheat straw (WSB), maize stover (MSB), and pearl millet stover (PSB)] at three (400, 500, and 600 A degrees C) pyrolysis temperatures. Pyrolysis temperatures and residue types profoundly influenced biochar properties, for instance, PSB biochar had the greatest pH (10.75 +/- 0.01), calcium carbonate equivalent (CCE) (47.8 +/- 0.5), and carbonate (CO3=) content (432 +/- 17 meq kg(-1)). Irrespective of residue, greater pyrolysis temperature improves the biochars' acid-neutralizing capacity by increasing pH in water (pHw), CCE, and CO3= content. The CCE of biochar showed a significant positive correlation with pHw (R (2) = 0.51, p 0.001) and ash content of biochar (R (2) = 0.54, p 0.001). A great amount of water-soluble potassium (20.6-29.5 g kg(-1)) in all the biochars made them suitable for supplying potassium to plants. Infrared spectroscopy explained the functional group formation, while XRD revealed mineral formation in the biochar. Thus, depending on the requirement, diverse properties of biochar can be prepared by designing residue type and pyrolysis temperature suitable for application in a specific soil to alleviate nutrient deficiency and improve soil productivity.
机译:这项研究的目的是评估由印度的四种主要农业残留物[稻草(RSB),小麦秸秆(WSB),玉米秸秆(MSB)和珍珠粟秸秆( PSB)]在三个(400、500和600 A摄氏度)热解温度下进行。热解温度和残留物类型深刻影响了生物炭的性质,例如,PSB生物炭的最大pH(10.75 +/- 0.01),碳酸钙当量(CCE)(47.8 +/- 0.5)和碳酸盐(CO3 =)含量(432) +/- 17毫克当量kg(-1))。无论残留量如何,更高的热解温度都会通过增加水中的pH(pHw),CCE和CO3 =含量来提高生物炭的酸中和能力。生物炭的CCE与pHw(R(2)= 0.51,p <0.001)和灰分(R(2)= 0.54,p <0.001)呈显着正相关。在所有生物炭中大量的水溶性钾(20.6-29.5 g kg(-1))使它们适合向植物供应钾。红外光谱解释了官能团的形成,而XRD显示了生物炭中矿物质的形成。因此,根据需要,可以通过设计适合于在特定土壤中施用的残留物类型和热解温度来制备生物炭的多种特性,以减轻养分缺乏并提高土壤生产力。

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